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<h1 id="sec_name">
<span data-if="hdevelop" style="display:inline;">affine_trans_point_3d</span><span data-if="c" style="display:none;">T_affine_trans_point_3d</span><span data-if="cpp" style="display:none;">AffineTransPoint3d</span><span data-if="dotnet" style="display:none;">AffineTransPoint3d</span><span data-if="python" style="display:none;">affine_trans_point_3d</span> (算子名称)</h1>
<h2>名称</h2>
<p><code><span data-if="hdevelop" style="display:inline;">affine_trans_point_3d</span><span data-if="c" style="display:none;">T_affine_trans_point_3d</span><span data-if="cpp" style="display:none;">AffineTransPoint3d</span><span data-if="dotnet" style="display:none;">AffineTransPoint3d</span><span data-if="python" style="display:none;">affine_trans_point_3d</span></code> — Apply an arbitrary affine 3D transformation to points.</p>
<h2 id="sec_synopsis">参数签名</h2>
<div data-if="hdevelop" style="display:inline;">
<p>
<code><b>affine_trans_point_3d</b>( :  : <a href="#HomMat3D"><i>HomMat3D</i></a>, <a href="#Px"><i>Px</i></a>, <a href="#Py"><i>Py</i></a>, <a href="#Pz"><i>Pz</i></a> : <a href="#Qx"><i>Qx</i></a>, <a href="#Qy"><i>Qy</i></a>, <a href="#Qz"><i>Qz</i></a>)</code></p>
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<p>
<code>Herror <b>T_affine_trans_point_3d</b>(const Htuple <a href="#HomMat3D"><i>HomMat3D</i></a>, const Htuple <a href="#Px"><i>Px</i></a>, const Htuple <a href="#Py"><i>Py</i></a>, const Htuple <a href="#Pz"><i>Pz</i></a>, Htuple* <a href="#Qx"><i>Qx</i></a>, Htuple* <a href="#Qy"><i>Qy</i></a>, Htuple* <a href="#Qz"><i>Qz</i></a>)</code></p>
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<p>
<code>void <b>AffineTransPoint3d</b>(const HTuple&amp; <a href="#HomMat3D"><i>HomMat3D</i></a>, const HTuple&amp; <a href="#Px"><i>Px</i></a>, const HTuple&amp; <a href="#Py"><i>Py</i></a>, const HTuple&amp; <a href="#Pz"><i>Pz</i></a>, HTuple* <a href="#Qx"><i>Qx</i></a>, HTuple* <a href="#Qy"><i>Qy</i></a>, HTuple* <a href="#Qz"><i>Qz</i></a>)</code></p>
<p>
<code><a href="HTuple.html">HTuple</a> <a href="HHomMat3D.html">HHomMat3D</a>::<b>AffineTransPoint3d</b>(const HTuple&amp; <a href="#Px"><i>Px</i></a>, const HTuple&amp; <a href="#Py"><i>Py</i></a>, const HTuple&amp; <a href="#Pz"><i>Pz</i></a>, HTuple* <a href="#Qy"><i>Qy</i></a>, HTuple* <a href="#Qz"><i>Qz</i></a>) const</code></p>
<p>
<code>double <a href="HHomMat3D.html">HHomMat3D</a>::<b>AffineTransPoint3d</b>(double <a href="#Px"><i>Px</i></a>, double <a href="#Py"><i>Py</i></a>, double <a href="#Pz"><i>Pz</i></a>, double* <a href="#Qy"><i>Qy</i></a>, double* <a href="#Qz"><i>Qz</i></a>) const</code></p>
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<p>
<code>static void <a href="HOperatorSet.html">HOperatorSet</a>.<b>AffineTransPoint3d</b>(<a href="HTuple.html">HTuple</a> <a href="#HomMat3D"><i>homMat3D</i></a>, <a href="HTuple.html">HTuple</a> <a href="#Px"><i>px</i></a>, <a href="HTuple.html">HTuple</a> <a href="#Py"><i>py</i></a>, <a href="HTuple.html">HTuple</a> <a href="#Pz"><i>pz</i></a>, out <a href="HTuple.html">HTuple</a> <a href="#Qx"><i>qx</i></a>, out <a href="HTuple.html">HTuple</a> <a href="#Qy"><i>qy</i></a>, out <a href="HTuple.html">HTuple</a> <a href="#Qz"><i>qz</i></a>)</code></p>
<p>
<code><a href="HTuple.html">HTuple</a> <a href="HHomMat3D.html">HHomMat3D</a>.<b>AffineTransPoint3d</b>(<a href="HTuple.html">HTuple</a> <a href="#Px"><i>px</i></a>, <a href="HTuple.html">HTuple</a> <a href="#Py"><i>py</i></a>, <a href="HTuple.html">HTuple</a> <a href="#Pz"><i>pz</i></a>, out <a href="HTuple.html">HTuple</a> <a href="#Qy"><i>qy</i></a>, out <a href="HTuple.html">HTuple</a> <a href="#Qz"><i>qz</i></a>)</code></p>
<p>
<code>double <a href="HHomMat3D.html">HHomMat3D</a>.<b>AffineTransPoint3d</b>(double <a href="#Px"><i>px</i></a>, double <a href="#Py"><i>py</i></a>, double <a href="#Pz"><i>pz</i></a>, out double <a href="#Qy"><i>qy</i></a>, out double <a href="#Qz"><i>qz</i></a>)</code></p>
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<p>
<code>def <b>affine_trans_point_3d</b>(<a href="#HomMat3D"><i>hom_mat_3d</i></a>: Sequence[float], <a href="#Px"><i>px</i></a>: MaybeSequence[Union[float, int]], <a href="#Py"><i>py</i></a>: MaybeSequence[Union[float, int]], <a href="#Pz"><i>pz</i></a>: MaybeSequence[Union[float, int]]) -&gt; Tuple[Sequence[float], Sequence[float], Sequence[float]]</code></p>
<p>
<code>def <b>affine_trans_point_3d_s</b>(<a href="#HomMat3D"><i>hom_mat_3d</i></a>: Sequence[float], <a href="#Px"><i>px</i></a>: MaybeSequence[Union[float, int]], <a href="#Py"><i>py</i></a>: MaybeSequence[Union[float, int]], <a href="#Pz"><i>pz</i></a>: MaybeSequence[Union[float, int]]) -&gt; Tuple[float, float, float]</code></p>
</div>
<h2 id="sec_description">描述</h2>
<p><code><span data-if="hdevelop" style="display:inline">affine_trans_point_3d</span><span data-if="c" style="display:none">affine_trans_point_3d</span><span data-if="cpp" style="display:none">AffineTransPoint3d</span><span data-if="com" style="display:none">AffineTransPoint3d</span><span data-if="dotnet" style="display:none">AffineTransPoint3d</span><span data-if="python" style="display:none">affine_trans_point_3d</span></code> applies an arbitrary affine 3D transformation,
i.e., scaling, rotation, and translation, to the input points
(<a href="#Px"><i><code><span data-if="hdevelop" style="display:inline">Px</span><span data-if="c" style="display:none">Px</span><span data-if="cpp" style="display:none">Px</span><span data-if="com" style="display:none">Px</span><span data-if="dotnet" style="display:none">px</span><span data-if="python" style="display:none">px</span></code></i></a>,<a href="#Py"><i><code><span data-if="hdevelop" style="display:inline">Py</span><span data-if="c" style="display:none">Py</span><span data-if="cpp" style="display:none">Py</span><span data-if="com" style="display:none">Py</span><span data-if="dotnet" style="display:none">py</span><span data-if="python" style="display:none">py</span></code></i></a>,<a href="#Pz"><i><code><span data-if="hdevelop" style="display:inline">Pz</span><span data-if="c" style="display:none">Pz</span><span data-if="cpp" style="display:none">Pz</span><span data-if="com" style="display:none">Pz</span><span data-if="dotnet" style="display:none">pz</span><span data-if="python" style="display:none">pz</span></code></i></a>) and returns the resulting points in
(<a href="#Qx"><i><code><span data-if="hdevelop" style="display:inline">Qx</span><span data-if="c" style="display:none">Qx</span><span data-if="cpp" style="display:none">Qx</span><span data-if="com" style="display:none">Qx</span><span data-if="dotnet" style="display:none">qx</span><span data-if="python" style="display:none">qx</span></code></i></a>, <a href="#Qy"><i><code><span data-if="hdevelop" style="display:inline">Qy</span><span data-if="c" style="display:none">Qy</span><span data-if="cpp" style="display:none">Qy</span><span data-if="com" style="display:none">Qy</span><span data-if="dotnet" style="display:none">qy</span><span data-if="python" style="display:none">qy</span></code></i></a>,<a href="#Qz"><i><code><span data-if="hdevelop" style="display:inline">Qz</span><span data-if="c" style="display:none">Qz</span><span data-if="cpp" style="display:none">Qz</span><span data-if="com" style="display:none">Qz</span><span data-if="dotnet" style="display:none">qz</span><span data-if="python" style="display:none">qz</span></code></i></a>). The affine transformation is
described by the homogeneous transformation matrix given in
<a href="#HomMat3D"><i><code><span data-if="hdevelop" style="display:inline">HomMat3D</span><span data-if="c" style="display:none">HomMat3D</span><span data-if="cpp" style="display:none">HomMat3D</span><span data-if="com" style="display:none">HomMat3D</span><span data-if="dotnet" style="display:none">homMat3D</span><span data-if="python" style="display:none">hom_mat_3d</span></code></i></a>. This corresponds to the following equation (input and
output points as homogeneous vectors):
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</p>
<p>The transformation matrix can be created using 该算子s
<a href="hom_mat3d_identity.html"><code><span data-if="hdevelop" style="display:inline">hom_mat3d_identity</span><span data-if="c" style="display:none">hom_mat3d_identity</span><span data-if="cpp" style="display:none">HomMat3dIdentity</span><span data-if="com" style="display:none">HomMat3dIdentity</span><span data-if="dotnet" style="display:none">HomMat3dIdentity</span><span data-if="python" style="display:none">hom_mat3d_identity</span></code></a>, <a href="hom_mat3d_scale.html"><code><span data-if="hdevelop" style="display:inline">hom_mat3d_scale</span><span data-if="c" style="display:none">hom_mat3d_scale</span><span data-if="cpp" style="display:none">HomMat3dScale</span><span data-if="com" style="display:none">HomMat3dScale</span><span data-if="dotnet" style="display:none">HomMat3dScale</span><span data-if="python" style="display:none">hom_mat3d_scale</span></code></a>,
<a href="hom_mat3d_rotate.html"><code><span data-if="hdevelop" style="display:inline">hom_mat3d_rotate</span><span data-if="c" style="display:none">hom_mat3d_rotate</span><span data-if="cpp" style="display:none">HomMat3dRotate</span><span data-if="com" style="display:none">HomMat3dRotate</span><span data-if="dotnet" style="display:none">HomMat3dRotate</span><span data-if="python" style="display:none">hom_mat3d_rotate</span></code></a>, <a href="hom_mat3d_translate.html"><code><span data-if="hdevelop" style="display:inline">hom_mat3d_translate</span><span data-if="c" style="display:none">hom_mat3d_translate</span><span data-if="cpp" style="display:none">HomMat3dTranslate</span><span data-if="com" style="display:none">HomMat3dTranslate</span><span data-if="dotnet" style="display:none">HomMat3dTranslate</span><span data-if="python" style="display:none">hom_mat3d_translate</span></code></a>, etc., or be the result
of <a href="pose_to_hom_mat3d.html"><code><span data-if="hdevelop" style="display:inline">pose_to_hom_mat3d</span><span data-if="c" style="display:none">pose_to_hom_mat3d</span><span data-if="cpp" style="display:none">PoseToHomMat3d</span><span data-if="com" style="display:none">PoseToHomMat3d</span><span data-if="dotnet" style="display:none">PoseToHomMat3d</span><span data-if="python" style="display:none">pose_to_hom_mat3d</span></code></a>.
</p>
<p>For example, if <a href="#HomMat3D"><i><code><span data-if="hdevelop" style="display:inline">HomMat3D</span><span data-if="c" style="display:none">HomMat3D</span><span data-if="cpp" style="display:none">HomMat3D</span><span data-if="com" style="display:none">HomMat3D</span><span data-if="dotnet" style="display:none">homMat3D</span><span data-if="python" style="display:none">hom_mat_3d</span></code></i></a> corresponds to a rigid transformation,
i.e., if it consists of a rotation and a translation, the
points are transformed as follows:
</p>
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</p>
<h2 id="sec_execution">运行信息</h2>
<ul>
  <li>多线程类型:可重入(与非独占操作符并行运行)。</li>
<li>多线程作用域:全局(可以从任何线程调用)。</li>
  
    <li>Automatically parallelized on internal data level.</li>
  
</ul>
<h2 id="sec_parameters">参数表</h2>
  <div class="par">
<div class="parhead">
<span id="HomMat3D" class="parname"><b><code><span data-if="hdevelop" style="display:inline">HomMat3D</span><span data-if="c" style="display:none">HomMat3D</span><span data-if="cpp" style="display:none">HomMat3D</span><span data-if="com" style="display:none">HomMat3D</span><span data-if="dotnet" style="display:none">homMat3D</span><span data-if="python" style="display:none">hom_mat_3d</span></code></b> (input_control)  </span><span>hom_mat3d <code>→</code> <span data-if="dotnet" style="display:none"><a href="HHomMat3D.html">HHomMat3D</a>, </span><span data-if="dotnet" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="python" style="display:none">Sequence[float]</span><span data-if="cpp" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="c" style="display:none">Htuple</span><span data-if="hdevelop" style="display:inline"> (real)</span><span data-if="dotnet" style="display:none"> (<i>double</i>)</span><span data-if="cpp" style="display:none"> (<i>double</i>)</span><span data-if="c" style="display:none"> (<i>double</i>)</span></span>
</div>
<p class="pardesc">Input transformation matrix.</p>
</div>
  <div class="par">
<div class="parhead">
<span id="Px" class="parname"><b><code><span data-if="hdevelop" style="display:inline">Px</span><span data-if="c" style="display:none">Px</span><span data-if="cpp" style="display:none">Px</span><span data-if="com" style="display:none">Px</span><span data-if="dotnet" style="display:none">px</span><span data-if="python" style="display:none">px</span></code></b> (input_control)  </span><span>point3d.x(-array) <code>→</code> <span data-if="dotnet" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="python" style="display:none">MaybeSequence[Union[float, int]]</span><span data-if="cpp" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="c" style="display:none">Htuple</span><span data-if="hdevelop" style="display:inline"> (real / </span><span data-if="hdevelop" style="display:inline">integer)</span><span data-if="dotnet" style="display:none"> (<i>double</i> / </span><span data-if="dotnet" style="display:none">int / </span><span data-if="dotnet" style="display:none">long)</span><span data-if="cpp" style="display:none"> (<i>double</i> / </span><span data-if="cpp" style="display:none">Hlong)</span><span data-if="c" style="display:none"> (<i>double</i> / </span><span data-if="c" style="display:none">Hlong)</span></span>
</div>
<p class="pardesc">Input point(s) (x coordinate).</p>
<p class="pardesc"><span class="parcat">Default:
      </span>64</p>
<p class="pardesc"><span class="parcat">Suggested values:
      </span>0, 16, 32, 64, 128, 256, 512, 1024</p>
</div>
  <div class="par">
<div class="parhead">
<span id="Py" class="parname"><b><code><span data-if="hdevelop" style="display:inline">Py</span><span data-if="c" style="display:none">Py</span><span data-if="cpp" style="display:none">Py</span><span data-if="com" style="display:none">Py</span><span data-if="dotnet" style="display:none">py</span><span data-if="python" style="display:none">py</span></code></b> (input_control)  </span><span>point3d.y(-array) <code>→</code> <span data-if="dotnet" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="python" style="display:none">MaybeSequence[Union[float, int]]</span><span data-if="cpp" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="c" style="display:none">Htuple</span><span data-if="hdevelop" style="display:inline"> (real / </span><span data-if="hdevelop" style="display:inline">integer)</span><span data-if="dotnet" style="display:none"> (<i>double</i> / </span><span data-if="dotnet" style="display:none">int / </span><span data-if="dotnet" style="display:none">long)</span><span data-if="cpp" style="display:none"> (<i>double</i> / </span><span data-if="cpp" style="display:none">Hlong)</span><span data-if="c" style="display:none"> (<i>double</i> / </span><span data-if="c" style="display:none">Hlong)</span></span>
</div>
<p class="pardesc">Input point(s) (y coordinate).</p>
<p class="pardesc"><span class="parcat">Default:
      </span>64</p>
<p class="pardesc"><span class="parcat">Suggested values:
      </span>0, 16, 32, 64, 128, 256, 512, 1024</p>
</div>
  <div class="par">
<div class="parhead">
<span id="Pz" class="parname"><b><code><span data-if="hdevelop" style="display:inline">Pz</span><span data-if="c" style="display:none">Pz</span><span data-if="cpp" style="display:none">Pz</span><span data-if="com" style="display:none">Pz</span><span data-if="dotnet" style="display:none">pz</span><span data-if="python" style="display:none">pz</span></code></b> (input_control)  </span><span>point3d.z(-array) <code>→</code> <span data-if="dotnet" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="python" style="display:none">MaybeSequence[Union[float, int]]</span><span data-if="cpp" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="c" style="display:none">Htuple</span><span data-if="hdevelop" style="display:inline"> (real / </span><span data-if="hdevelop" style="display:inline">integer)</span><span data-if="dotnet" style="display:none"> (<i>double</i> / </span><span data-if="dotnet" style="display:none">int / </span><span data-if="dotnet" style="display:none">long)</span><span data-if="cpp" style="display:none"> (<i>double</i> / </span><span data-if="cpp" style="display:none">Hlong)</span><span data-if="c" style="display:none"> (<i>double</i> / </span><span data-if="c" style="display:none">Hlong)</span></span>
</div>
<p class="pardesc">Input point(s) (z coordinate).</p>
<p class="pardesc"><span class="parcat">Default:
      </span>64</p>
<p class="pardesc"><span class="parcat">Suggested values:
      </span>0, 16, 32, 64, 128, 256, 512, 1024</p>
</div>
  <div class="par">
<div class="parhead">
<span id="Qx" class="parname"><b><code><span data-if="hdevelop" style="display:inline">Qx</span><span data-if="c" style="display:none">Qx</span><span data-if="cpp" style="display:none">Qx</span><span data-if="com" style="display:none">Qx</span><span data-if="dotnet" style="display:none">qx</span><span data-if="python" style="display:none">qx</span></code></b> (output_control)  </span><span>point3d.x(-array) <code>→</code> <span data-if="dotnet" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="python" style="display:none">Sequence[float]</span><span data-if="cpp" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="c" style="display:none">Htuple</span><span data-if="hdevelop" style="display:inline"> (real)</span><span data-if="dotnet" style="display:none"> (<i>double</i>)</span><span data-if="cpp" style="display:none"> (<i>double</i>)</span><span data-if="c" style="display:none"> (<i>double</i>)</span></span>
</div>
<p class="pardesc">Output point(s) (x coordinate).</p>
</div>
  <div class="par">
<div class="parhead">
<span id="Qy" class="parname"><b><code><span data-if="hdevelop" style="display:inline">Qy</span><span data-if="c" style="display:none">Qy</span><span data-if="cpp" style="display:none">Qy</span><span data-if="com" style="display:none">Qy</span><span data-if="dotnet" style="display:none">qy</span><span data-if="python" style="display:none">qy</span></code></b> (output_control)  </span><span>point3d.y(-array) <code>→</code> <span data-if="dotnet" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="python" style="display:none">Sequence[float]</span><span data-if="cpp" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="c" style="display:none">Htuple</span><span data-if="hdevelop" style="display:inline"> (real)</span><span data-if="dotnet" style="display:none"> (<i>double</i>)</span><span data-if="cpp" style="display:none"> (<i>double</i>)</span><span data-if="c" style="display:none"> (<i>double</i>)</span></span>
</div>
<p class="pardesc">Output point(s) (y coordinate).</p>
</div>
  <div class="par">
<div class="parhead">
<span id="Qz" class="parname"><b><code><span data-if="hdevelop" style="display:inline">Qz</span><span data-if="c" style="display:none">Qz</span><span data-if="cpp" style="display:none">Qz</span><span data-if="com" style="display:none">Qz</span><span data-if="dotnet" style="display:none">qz</span><span data-if="python" style="display:none">qz</span></code></b> (output_control)  </span><span>point3d.z(-array) <code>→</code> <span data-if="dotnet" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="python" style="display:none">Sequence[float]</span><span data-if="cpp" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="c" style="display:none">Htuple</span><span data-if="hdevelop" style="display:inline"> (real)</span><span data-if="dotnet" style="display:none"> (<i>double</i>)</span><span data-if="cpp" style="display:none"> (<i>double</i>)</span><span data-if="c" style="display:none"> (<i>double</i>)</span></span>
</div>
<p class="pardesc">Output point(s) (z coordinate).</p>
</div>
<h2 id="sec_result">结果</h2>
<p>如果参数均有效，算子 <code><span data-if="hdevelop" style="display:inline">affine_trans_point_3d</span><span data-if="c" style="display:none">affine_trans_point_3d</span><span data-if="cpp" style="display:none">AffineTransPoint3d</span><span data-if="com" style="display:none">AffineTransPoint3d</span><span data-if="dotnet" style="display:none">AffineTransPoint3d</span><span data-if="python" style="display:none">affine_trans_point_3d</span></code>
returns <TT>2</TT> (
      <TT>H_MSG_TRUE</TT>)
    . 如有必要，将引发异常。 </p>
<h2 id="sec_predecessors">可能的前置算子</h2>
<p>
<code><a href="hom_mat3d_translate.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_translate</span><span data-if="c" style="display:none">hom_mat3d_translate</span><span data-if="cpp" style="display:none">HomMat3dTranslate</span><span data-if="com" style="display:none">HomMat3dTranslate</span><span data-if="dotnet" style="display:none">HomMat3dTranslate</span><span data-if="python" style="display:none">hom_mat3d_translate</span></a></code>, 
<code><a href="hom_mat3d_translate_local.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_translate_local</span><span data-if="c" style="display:none">hom_mat3d_translate_local</span><span data-if="cpp" style="display:none">HomMat3dTranslateLocal</span><span data-if="com" style="display:none">HomMat3dTranslateLocal</span><span data-if="dotnet" style="display:none">HomMat3dTranslateLocal</span><span data-if="python" style="display:none">hom_mat3d_translate_local</span></a></code>, 
<code><a href="hom_mat3d_scale.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_scale</span><span data-if="c" style="display:none">hom_mat3d_scale</span><span data-if="cpp" style="display:none">HomMat3dScale</span><span data-if="com" style="display:none">HomMat3dScale</span><span data-if="dotnet" style="display:none">HomMat3dScale</span><span data-if="python" style="display:none">hom_mat3d_scale</span></a></code>, 
<code><a href="hom_mat3d_scale_local.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_scale_local</span><span data-if="c" style="display:none">hom_mat3d_scale_local</span><span data-if="cpp" style="display:none">HomMat3dScaleLocal</span><span data-if="com" style="display:none">HomMat3dScaleLocal</span><span data-if="dotnet" style="display:none">HomMat3dScaleLocal</span><span data-if="python" style="display:none">hom_mat3d_scale_local</span></a></code>, 
<code><a href="hom_mat3d_rotate.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_rotate</span><span data-if="c" style="display:none">hom_mat3d_rotate</span><span data-if="cpp" style="display:none">HomMat3dRotate</span><span data-if="com" style="display:none">HomMat3dRotate</span><span data-if="dotnet" style="display:none">HomMat3dRotate</span><span data-if="python" style="display:none">hom_mat3d_rotate</span></a></code>, 
<code><a href="hom_mat3d_rotate_local.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_rotate_local</span><span data-if="c" style="display:none">hom_mat3d_rotate_local</span><span data-if="cpp" style="display:none">HomMat3dRotateLocal</span><span data-if="com" style="display:none">HomMat3dRotateLocal</span><span data-if="dotnet" style="display:none">HomMat3dRotateLocal</span><span data-if="python" style="display:none">hom_mat3d_rotate_local</span></a></code>
</p>
<h2 id="sec_successors">可能的后置算子</h2>
<p>
<code><a href="hom_mat3d_translate.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_translate</span><span data-if="c" style="display:none">hom_mat3d_translate</span><span data-if="cpp" style="display:none">HomMat3dTranslate</span><span data-if="com" style="display:none">HomMat3dTranslate</span><span data-if="dotnet" style="display:none">HomMat3dTranslate</span><span data-if="python" style="display:none">hom_mat3d_translate</span></a></code>, 
<code><a href="hom_mat3d_translate_local.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_translate_local</span><span data-if="c" style="display:none">hom_mat3d_translate_local</span><span data-if="cpp" style="display:none">HomMat3dTranslateLocal</span><span data-if="com" style="display:none">HomMat3dTranslateLocal</span><span data-if="dotnet" style="display:none">HomMat3dTranslateLocal</span><span data-if="python" style="display:none">hom_mat3d_translate_local</span></a></code>, 
<code><a href="hom_mat3d_scale.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_scale</span><span data-if="c" style="display:none">hom_mat3d_scale</span><span data-if="cpp" style="display:none">HomMat3dScale</span><span data-if="com" style="display:none">HomMat3dScale</span><span data-if="dotnet" style="display:none">HomMat3dScale</span><span data-if="python" style="display:none">hom_mat3d_scale</span></a></code>, 
<code><a href="hom_mat3d_scale_local.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_scale_local</span><span data-if="c" style="display:none">hom_mat3d_scale_local</span><span data-if="cpp" style="display:none">HomMat3dScaleLocal</span><span data-if="com" style="display:none">HomMat3dScaleLocal</span><span data-if="dotnet" style="display:none">HomMat3dScaleLocal</span><span data-if="python" style="display:none">hom_mat3d_scale_local</span></a></code>, 
<code><a href="hom_mat3d_rotate.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_rotate</span><span data-if="c" style="display:none">hom_mat3d_rotate</span><span data-if="cpp" style="display:none">HomMat3dRotate</span><span data-if="com" style="display:none">HomMat3dRotate</span><span data-if="dotnet" style="display:none">HomMat3dRotate</span><span data-if="python" style="display:none">hom_mat3d_rotate</span></a></code>, 
<code><a href="hom_mat3d_rotate_local.html"><span data-if="hdevelop" style="display:inline">hom_mat3d_rotate_local</span><span data-if="c" style="display:none">hom_mat3d_rotate_local</span><span data-if="cpp" style="display:none">HomMat3dRotateLocal</span><span data-if="com" style="display:none">HomMat3dRotateLocal</span><span data-if="dotnet" style="display:none">HomMat3dRotateLocal</span><span data-if="python" style="display:none">hom_mat3d_rotate_local</span></a></code>
</p>
<h2 id="sec_module">模块</h2>
<p>
Foundation</p>
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